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PMID: 497177 Published · ppublish English Journal Article

Increased thermal stability of proteins in the presence of sugars and polyols.

Biochemistry ·Vol. 18 ·No. 23 ·1979-11-13 ·Pages 5191-6

Back JF, Oakenfull D, Smith MB

Abstract

Sugars and polyols stablize proteins against heat denaturation. Scanning calorimetry was used to obtain a quantitative estimate of the degree of stabilization. Solutions of ovalbumin, lysozyme, conalbumin, and alpha-chymotrypsinogen were heated at a constant rate, and the temperature of the maximum rate of denaturation was estimated (Tm). Addition of a sugar or polyol raised Tm. The magnitude of the stabilizing effect (delta Tm) depended on both the nature of the protein and the nature of the sugar or polyol, ranging from 18.5 degrees C for lysozyme at pH 3 in the presence of 50% (w/w) sorbitol to 0 degrees C for conalbumin at pH 7 in 50% glycerol solution. It is argued that this stablization is due to the effects of sugars and polyols on hydrophobic interactions. The strength of the hydrophobic interaction was measured in model systems in sucrose and glycerol solutions. Sucrose and glycerol strengthened the pairwise hydrophobic interaction between hydrophobic groups; however, they reduced the tendency for complete transfer of hydrophobic groups from an aqueous to a nonpolar environment. The extent of stabliziation by different sugars and polyols is explained by their different influences on the structure of water. The difference between the partial molar volume of the sugar or polyol and its van der Waals volume was used as a rough quantitative measure of the structure-making or structure-breaking effect. There was a linear relationship between this quantity and delta Tm.

MeSH Terms
Calorimetry, Differential Scanning Carbohydrates Drug Stability Ethylene Glycols Proteins Sugar Alcohols Thermodynamics
Chemicals
Carbohydrates Ethylene Glycols Proteins Sugar Alcohols
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Back J F
Oakenfull D
Smith M B
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
1979-11-13
Pages
5191-6
Language
English
Region
United States
NLM ID
0370623
Subset
IM
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